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Journal ArticleDOI

A Synthesis of Progress and Uncertainties in Attributing the Sources of Mercury in Deposition

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TLDR
It is agreed that the uncertainty is strongly dependent upon scale and that the question as stated is answerable with greater confidence both very near and very far from major point sources, assuming that the “global pool” is a recognizable “source.”
Abstract
A panel of international experts was convened in Madison, Wisconsin, in 2005, as part of the 8th International Conference on Mercury as a Global Pollutant. Our charge was to address the state of science pertinent to source attribution, specifically our key question was: "For a given location, can we ascertain with confidence the relative contributions of local, regional, and global sources, and of natural versus anthropogenic emissions to mercury deposition?" The panel synthesized new research pertinent to this question published over the past decade, with emphasis on four major research topics: long-term anthropogenic change, current emission and deposition trends, chemical transformations and cycling, and modeling and uncertainty. Within each topic, the panel drew a series of conclusions, which are presented in this paper. These conclusions led us to concur that the answer to our question is a "qualified yes," with the qualification being dependent upon the level of uncertainty one is willing to accept. We agreed that the uncertainty is strongly dependent upon scale and that our question as stated is answerable with greater confidence both very near and very far from major point sources, assuming that the "global pool" is a recognizable "source." Many regions of interest from an ecosystem-exposure standpoint lie in between, where source attribution carries the greatest degree of uncertainty.

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Journal ArticleDOI

Isotopic composition of total gaseous mercury at a high-altitude tropical forest site influenced by air masses from the East Asia continent and the Pacific Ocean

TL;DR: Gaseous elemental mercury (GEM), gaseous oxidized (GOM), particulate-bound mercury (PBM), and the isotopic composition of total Gaseous mercury (TGM) were measured at the Lulin Atmospheric Background Station (LABS) from February 2015 to January 2016 as mentioned in this paper.
BookDOI

Sustainable Development, Knowledge Society and Smart Future Manufacturing Technologies

TL;DR: Svedin et al. as mentioned in this paper proposed a framework for sustainable development at different scale levels from micro-to macro-level, including the material base for society and its natural environmental embedding.
Journal ArticleDOI

A Historical Sedimentary Record of Mercury in a Shallow Eutrophic Lake: Impacts of Human Activities and Climate Change

TL;DR: Wang et al. as discussed by the authors investigated the 100-year history of mercury (Hg) deposition in sediments from Chao Lake, a shallow eutrophic lake in China, and showed that the Hg deposition history can be separated into three stages (pre-1960s, 1960s-1980s, and post-1978s) over the last 100 years.
Journal ArticleDOI

Deciphering the impact of land-uses on terrestrial organic matter and mercury inputs to large boreal lakes of central Québec using lignin biomarkers

TL;DR: In this article, watershed impacts of anthropogenic activities on terrestrial organic matter (TOM) and total mercury (THg) dynamics in large boreal lake ecosystems were evaluated using sediment cores retrieved in eight large lakes of Quebec (Canada).
References
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Journal ArticleDOI

The biogeochemical cycling of elemental mercury: Anthropogenic influences☆

TL;DR: A review of the available information on global Hg cycling shows that the atmosphere and surface ocean are in rapid equilibrium; the evasion of Hg0 from the oceans is balanced by the total oceanic deposition of hg(II) from the atmosphere as mentioned in this paper.
Journal ArticleDOI

The Case for Atmospheric Mercury Contamination in Remote Areas

TL;DR: A review of the weaknesses in interpretation and the choice of information that has been used to argue against atmospheric Hg contamination can be found in this paper, where the authors examine the weaknesses of the information used to support the prevailing scientific view that natural geologic sources are the principal contributors of Hg.
Journal ArticleDOI

Global anthropogenic mercury emission inventory for 2000

TL;DR: Wilson et al. as mentioned in this paper presented a new inventory of global emissions of mercury to the atmosphere from anthropogenic sources for the year 2000, showing that the largest emissions of Hg to the global atmosphere occur from combustion of fossil fuels, mainly coal in utility, industrial, and residential boilers.
Journal ArticleDOI

Arctic springtime depletion of mercury

TL;DR: In this paper, the authors show that during the spring (April to early June) of 1995, there were frequent episodic depletions in mercury vapour concentrations in Arctic surface air.
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